Savchuk Maria I, Kopchuk Dmitry S, Taniya Olga S, Nikonov Igor L, Egorov Ilya N, Santra Sougata, Zyryanov Grigory V, Chupakhin Oleg N, Charushin Valery N
Ural Federal University, 19, Mira St, Yekaterinburg, Russian Federation, 620002.
Postovsky Institute of Organic Synthesis of RAS (Ural Division), 22/20, S. Kovalevskoy/Akademicheskaya St, Yekaterinburg, Russian Federation, 620990.
J Fluoresc. 2021 Jul;31(4):1099-1111. doi: 10.1007/s10895-021-02714-3. Epub 2021 May 8.
A PASE (pot, step, atom, economic) synthetic approach to 5-aryl-6-arylthio-2,2'-bipyridine and 6-arylthio-2,5-diarylpyridine ligands/fluorophores has been reported via SH in 6-aryl-5H-1,2,4-triazines/aza-Diels-Alder reaction sequence. In this article, the "1,2,4-triazine" methodology was successfully used for the synthesis of C6-thiophenol-substituted (2,2'-bi)pyridines as it is well known that thio-substituted (bi)pyridines and their aza-analogs are of wide practical interest. The photophysical properties of the obtained compounds are studied and compared with those reported earlier for 6-substituted 2,2'-bipyridines. The influence of the nature of substituents in the 6-arylthio(bi)pyridine core on the photophysical properties is discussed. It was observed that the new compounds exhibited promising photophysical properties and could be considered as potential push-pull fluorophores. In addition, they demonstrated greater Stokes shift values compared to the previously described 6-H, 6-arylamino and 6-pentafluoro-2,2'-bipyridines and higher fluorescence quantum yields values compare to pentafluorophenyl-substituted 2,2'-bipyridines. Depending on a nature of (bi)pyridine fluorophore LE (locally excited) and/or ICT (intramolecular charge transfer) state were prevailing in emission spectra.
通过6-芳基-5H-1,2,4-三嗪中的SH/氮杂狄尔斯-阿尔德反应序列,已报道了一种用于合成5-芳基-6-芳硫基-2,2'-联吡啶和6-芳硫基-2,5-二芳基吡啶配体/荧光团的PASE(锅、步、原子、经济)合成方法。在本文中,“1,2,4-三嗪”方法成功用于合成C6-苯硫酚取代的(2,2'-联)吡啶,因为众所周知,硫取代的(联)吡啶及其氮杂类似物具有广泛的实际应用价值。研究了所得化合物的光物理性质,并与先前报道的6-取代2,2'-联吡啶的光物理性质进行了比较。讨论了6-芳硫基(联)吡啶核心中取代基的性质对光物理性质的影响。观察到新化合物表现出有前景的光物理性质,可被视为潜在的推挽荧光团。此外,与先前描述的6-H、6-芳氨基和6-五氟-2,2'-联吡啶相比,它们表现出更大的斯托克斯位移值,与五氟苯基取代的2,2'-联吡啶相比,具有更高的荧光量子产率值。根据(联)吡啶荧光团的性质,发射光谱中主要存在局域激发(LE)和/或分子内电荷转移(ICT)状态。